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Three-Dimensional Hydromechanical Sectional Analysis of Cracked Nonprismatic Concrete Spillway Piers

机译:开裂非棱柱混凝土溢洪墩的三维水力剖面分析

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摘要

Several concrete hydraulic structures, such as spillway piers, must be considered three-dimensional (3D) components subjected to 3D loads. A very convenient approach to perform stability analysis of concrete dams is the so-called gravity method, leading to the solution of a PMM problem (axial force P and biaxial bending moments M_x, M_y) assuming linear normal stress distribution. If cracking takes place, water penetrates into the cracks, inducing the development of full uplift pressures (UPs). Sliding safety factors (SSFs) are computed using shear force resultants V_x, V_y, and a Mohr-Coulomb failure criterion while ignoring torsion T (VVT). This paper presents a 3D extension of the gravity method for cracked planar concrete sections of arbitrary geometry subjected to arbitrary loads (PMM-VVT). To compute the shear stress distribution, a VVT sectional analysis algorithm has been developed based on the theory of elasticity (TE), including Saint- Venant and warping torsional components combined with triangular 2D finite elements (FEs). Afterward, the SSF on the failure plane is computed from the integration of normal stresses on the remaining uncracked area where the Mohr-Coulomb criterion (considering the shear stresses from the VVT solution) has not been locally exceeded. Two validation examples and a case study of an actual pier are presented to illustrate the accuracy and efficiency of the proposed approach compared with full 3D FE analyses.
机译:几个混凝土水工结构,例如溢洪道墩,必须考虑承受3D载荷的三维(3D)组件。进行混凝土大坝稳定性分析的一种非常方便的方法是所谓的重力法,它假定线性法向应力分布,从而可以解决PMM问题(轴向力P和双轴弯矩M_x,M_y)。如果发生破裂,水会渗透到裂缝中,从而导致产生完全上升压力(UPs)。滑动安全系数(SSFs)是使用剪切力结果V_x,V_y和Mohr-Coulomb破坏准则来计算的,而忽略了扭转T(VVT)。本文介绍了重力方法的3D扩展,适用于任意几何形状的开裂平面混凝土截面,承受任意载荷(PMM-VVT)。为了计算剪切应力分布,已经基于弹性理论(TE)开发了VVT截面分析算法,其中包括Saint-Venant和翘曲扭转分量以及三角形2D有限元(FE)。然后,根据剩余的未破裂区域上的法向应力的积分来计算破坏平面上的SSF,在该区域中,未局部超过Mohr-Coulomb准则(考虑来自VVT解决方案的剪切应力)。给出了两个验证示例和一个实际墩的案例研究,以说明与完整的3D FE分析相比所提出的方法的准确性和效率。

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